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The thresholds of ionospheric plasma instabilities pumped by high-frequency radio waves at EISCAT

机译:EISCAT高频电波激发的电离层等离子体不稳定性阈值

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摘要

We test the existing theories regarding the thresholds for the parametric decay instability (PDI), the oscillating two-steam instability (OTSI), and the thermal parametric instability (TPI) using the European Incoherent Scatter (EISCAT) facility's ionospheric heater. In these processes, the pump wave can couple to various electrostatic waves in the F layer ionosphere, which can be observed using the EISCAT UHF radar (PDI and OTSI) or by HF radar (TPI). On 19 October 2012, the heater power was stepped from ∼0.5 MW to ∼100 MW effective radiated power in seven steps using a 1 min on, 1 min off cycle. We use an electric field model, taking into account D region absorption, to compare theory with our observations. In all three cases, we find good agreement. In addition, the growth of striations formed during the TPI causes anomalous absorption of the heater wave, which we observe as decreased UHF ion line and plasma line backscatter power. We show evidence that heating for a prolonged period of time reduces the UHF ion line intensity throughout the experiment.
机译:我们使用欧洲非相干散射(EISCAT)设备的电离层加热器测试了有关参数衰减不稳定性(PDI),振荡两蒸汽不稳定性(OTSI)和热参数不稳定性(TPI)阈值的现有理论。在这些过程中,泵浦波可以耦合到F层电离层中的各种静电波,可以使用EISCAT UHF雷达(PDI和OTSI)或HF雷达(TPI)观察到。在2012年10月19日,加热器功率从1个开启,1个关闭循环以7个步骤从约0.5 MW逐步提高到约100 MW的有效辐射功率。我们使用考虑了D区域吸收的电场模型,将理论与我们的观察结果进行比较。在这三种情况下,我们都发现了很好的一致性。另外,在TPI期间形成的条纹增长会导致加热器波吸收异常,我们观察到这是UHF离子线和等离子体线反向散射功率降低。我们显示出证据,长时间加热会降低整个实验过程中的UHF离子线强度。

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